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25 * policytree.c - rfc5280 section 6.1.2 and later policy_tree implementation.
28 #include "policytree.h"
29 #include <libDER/oidsPriv.h>
31 #include <utilities/debugging.h>
35 #define DUMP_POLICY_TREE 0
37 #if !defined(DUMP_POLICY_TREE)
41 static policy_set_t
policy_set_create(const oid_t
*p_oid
) {
42 policy_set_t policy_set
=
43 (policy_set_t
)malloc(sizeof(*policy_set
));
44 policy_set
->oid_next
= NULL
;
45 policy_set
->oid
= *p_oid
;
46 secdebug("policy-set", "%p", policy_set
);
50 void policy_set_add(policy_set_t
*policy_set
, const oid_t
*p_oid
) {
51 policy_set_t node
= (policy_set_t
)malloc(sizeof(*node
));
52 node
->oid_next
= *policy_set
;
55 secdebug("policy-set", "%p -> %p", node
, node
->oid_next
);
58 void policy_set_free(policy_set_t node
) {
60 policy_set_t next
= node
->oid_next
;
61 secdebug("policy-set", "%p -> %p", node
, next
);
67 bool policy_set_contains(policy_set_t node
, const oid_t
*oid
) {
68 for (; node
; node
= node
->oid_next
) {
69 if (oid_equal(node
->oid
, *oid
))
75 void policy_set_intersect(policy_set_t
*policy_set
, policy_set_t other_set
) {
76 bool other_has_any
= policy_set_contains(other_set
, &oidAnyPolicy
);
77 if (policy_set_contains(*policy_set
, &oidAnyPolicy
)) {
78 policy_set_t node
= other_set
;
80 /* Both sets contain anyPolicy so the intersection is anyPolicy
81 plus all oids in either set. */
83 if (!policy_set_contains(*policy_set
, &node
->oid
)) {
84 policy_set_add(policy_set
, &node
->oid
);
88 /* The result set contains anyPolicy and other_set doesn't. The
89 result set should be a copy of other_set. */
90 policy_set_free(*policy_set
);
93 policy_set_add(policy_set
, &node
->oid
);
96 } else if (!other_has_any
) {
97 /* Neither set contains any policy oid so remove any values from the
98 result set that aren't in other_set. */
99 policy_set_t
*pnode
= policy_set
;
101 policy_set_t node
= *pnode
;
102 if (policy_set_contains(other_set
, &node
->oid
)) {
103 pnode
= &node
->oid_next
;
105 *pnode
= node
->oid_next
;
106 node
->oid_next
= NULL
;
107 policy_set_free(node
);
113 policy_tree_t
policy_tree_create(const oid_t
*p_oid
, policy_qualifier_t p_q
) {
114 policy_tree_t node
= malloc(sizeof(*node
));
115 memset(node
, 0, sizeof(*node
));
116 node
->valid_policy
= *p_oid
;
117 node
->qualifier_set
= p_q
;
118 node
->expected_policy_set
= policy_set_create(p_oid
);
119 secdebug("policy-node", "%p", node
);
123 /* Walk the nodes in a tree at depth and invoke callback for each one. */
124 bool policy_tree_walk_depth(policy_tree_t root
, int depth
,
125 bool(*callback
)(policy_tree_t
, void *), void *ctx
) {
126 policy_tree_t stack
[depth
+ 1];
128 stack
[stack_ix
] = root
;
131 bool child_visited
= false;
132 while (stack_ix
>= 0) {
133 /* stack[stack_ix - 1] is the parent of the current node. */
134 node
= stack
[stack_ix
];
135 policy_tree_t child
= node
->children
;
136 if (!child_visited
&& stack_ix
< depth
&& child
) {
137 /* If we have a child and we haven't reached the
138 required depth yet, we go depth first and proccess it. */
139 stack
[++stack_ix
] = child
;
141 if (stack_ix
== depth
) {
143 match
|= callback(node
, ctx
);
145 /* Move on to sibling of node. */
146 policy_tree_t sibling
= node
->siblings
;
148 /* Replace current node with it's sibling. */
149 stack
[stack_ix
] = sibling
;
150 child_visited
= false;
152 /* No more siblings left, so pop the stack and backtrack. */
154 /* We've handled the top of the stack's child already so
155 just look at it's siblings. */
156 child_visited
= true;
163 static void policy_tree_free_node(policy_tree_t node
) {
164 secdebug("policy-node", "%p children: %p siblngs: %p", node
,
165 node
->children
, node
->siblings
);
166 if (node
->expected_policy_set
) {
167 policy_set_free(node
->expected_policy_set
);
168 node
->expected_policy_set
= NULL
;
173 void policy_tree_remove_node(policy_tree_t
*node
) {
174 /* Free node's children */
175 policy_tree_t
*child
= &(*node
)->children
;
177 policy_tree_prune(child
);
179 /* Remove node from parent */
180 policy_tree_t parent
= (*node
)->parent
;
181 parent
->children
= (*node
)->siblings
;
184 policy_tree_free_node(*node
);
188 /* Prune nodes from node down. */
189 void policy_tree_prune(policy_tree_t
*node
) {
190 /* Free all our children and siblings. */
191 policy_tree_t
*child
= &(*node
)->children
;
193 policy_tree_prune(child
);
194 policy_tree_t
*sibling
= &(*node
)->siblings
;
196 policy_tree_prune(sibling
);
197 policy_tree_free_node(*node
);
201 /* Prune childless nodes at depth. */
202 void policy_tree_prune_childless(policy_tree_t
*root
, int depth
) {
203 policy_tree_t
*stack
[depth
+ 1];
205 stack
[stack_ix
] = root
;
206 bool child_visited
= false;
207 while (stack_ix
>= 0) {
209 node
= stack
[stack_ix
];
210 policy_tree_t
*child
= &(*node
)->children
;
211 if (!child_visited
&& stack_ix
< depth
&& *child
) {
212 /* If we have a child and we haven't reached the
213 required depth yet, we go depth first and proccess it. */
214 stack
[++stack_ix
] = child
;
215 } else if (!*child
) {
216 /* Childless node found, nuke it. */
217 #if !defined(DUMP_POLICY_TREE)
218 printf("# prune /<%.08lx<\\ |%.08lx| >%.08lx> :%s: depth %d\n",
219 (intptr_t)node
, (intptr_t)*node
, (intptr_t)(*node
)->siblings
,
220 (child_visited
? "v" : " "), stack_ix
);
223 policy_tree_t next
= (*node
)->siblings
;
224 (*node
)->siblings
= NULL
;
225 policy_tree_free_node(*node
);
228 /* stack[stack_ix] (node) already points to next now. */
229 child_visited
= false;
231 /* No more siblings left, so pop the stack and backtrack. */
233 child_visited
= true;
236 policy_tree_t
*sibling
= &(*node
)->siblings
;
238 /* Replace current node with it's sibling. */
239 stack
[stack_ix
] = sibling
;
240 child_visited
= false;
242 /* No more siblings left, so pop the stack and backtrack. */
244 child_visited
= true;
250 /* Add a new child to the tree. */
251 static void policy_tree_add_child_explicit(policy_tree_t parent
,
252 const oid_t
*p_oid
, policy_qualifier_t p_q
, policy_set_t p_expected
) {
253 policy_tree_t child
= malloc(sizeof(*child
));
254 memset(child
, 0, sizeof(*child
));
255 child
->valid_policy
= *p_oid
;
256 child
->qualifier_set
= p_q
;
257 child
->expected_policy_set
= p_expected
;
258 child
->parent
= parent
;
261 printf("# /%.08lx\\ |%.08lx| \\%.08lx/ >%.08lx> \\>%.08lx>/\n",
262 (intptr_t)parent
, (intptr_t)child
, (intptr_t)parent
->children
,
263 (intptr_t)parent
->siblings
,
264 (intptr_t)(parent
->children
? parent
->children
->siblings
: NULL
));
267 /* Previous child becomes new child's first sibling. */
268 child
->siblings
= parent
->children
;
269 /* New child becomes parent's first child. */
270 parent
->children
= child
;
272 secdebug("policy-node", "%p siblngs: %p", child
, child
->siblings
);
275 /* Add a new child to the tree parent setting valid_policy to p_oid,
276 qualifier_set to p_q and expected_policy_set to a set containing
278 void policy_tree_add_child(policy_tree_t parent
,
279 const oid_t
*p_oid
, policy_qualifier_t p_q
) {
280 policy_set_t policy_set
= policy_set_create(p_oid
);
281 policy_tree_add_child_explicit(parent
, p_oid
, p_q
, policy_set
);
284 /* Add a new sibling to the tree setting valid_policy to p_oid,
285 qualifier set to p_q and expected_policy_set to p_expected */
286 void policy_tree_add_sibling(policy_tree_t sibling
, const oid_t
*p_oid
,
287 policy_qualifier_t p_q
, policy_set_t p_expected
) {
288 policy_tree_add_child_explicit(sibling
->parent
, p_oid
, p_q
, p_expected
);
291 void policy_tree_set_expected_policy(policy_tree_t node
,
292 policy_set_t p_expected
) {
293 if (node
->expected_policy_set
)
294 policy_set_free(node
->expected_policy_set
);
295 node
->expected_policy_set
= p_expected
;
298 #if !defined(DUMP_POLICY_TREE)
299 /* Dump a policy tree. */
300 static void policy_tree_dump4(policy_tree_t node
, policy_tree_t parent
,
301 policy_tree_t prev_sibling
, int depth
) {
302 policy_tree_t child
= node
->children
;
303 policy_tree_t sibling
= node
->siblings
;
304 static const char *spaces
= " ";
305 printf("# %.*s/%.08lx\\ |%.08lx| <%.08lx< >%.08lx> depth %d\n",
307 (intptr_t)parent
, (intptr_t)node
, (intptr_t)prev_sibling
,
308 (intptr_t)sibling
, depth
);
310 policy_tree_dump4(child
, node
, NULL
, depth
+ 1);
312 policy_tree_dump4(sibling
, parent
, node
, depth
);
314 #endif /* !defined(DUMP_POLICY_TREE) */
316 void policy_tree_dump(policy_tree_t node
) {
317 #if !defined(DUMP_POLICY_TREE)
318 policy_tree_dump4(node
, NULL
, NULL
, 0);
319 #endif /* !defined(DUMP_POLICY_TREE) */